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Control of particle interfaces-the critical issue in nanoparticle technology

机译:粒子界面的控制-纳米粒子技术中的关键问题

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In the field of particle technology, processes cannot yet be designed from a basic molecular understanding. Nanotechnology, however, begins to bridge this gap between molecules and particles, and may thus not only open new ways for the production and handling of particulate matter, but also for the engineered design of advanced material properties. The visions and applications in nanoparticle technology cover a broad range, e.g. quantum dots in information technology, refractory particles for advanced ceramics, highly active substances in pharmacy, catalysts and micro-and mesoporous adsorbents to name only a few applications. Starting from the concept of product engineering we investigate the basic preconditions for tailoring nanoparticulate properties, i.e. the control of the particle interactions. This cocnept is then applied to precipitation as an example for particle synthesis and to particulate thin film formation as an example for structure formation.
机译:在粒子技术领域,还不能从基本的分子理解来设计过程。然而,纳米技术开始弥合分子与颗粒之间的这种鸿沟,因此不仅可以为生产和处理颗粒物开辟新的途径,而且可以为先进的材料性能进行工程设计。纳米粒子技术的愿景和应用涵盖了广泛的领域,例如信息技术中的量子点,高级陶瓷用耐火材料颗粒,制药中的高活性物质,催化剂以及微孔和中孔吸附剂,仅举几例。从产品工程的概念出发,我们研究了定制纳米颗粒特性的基本前提条件,即控制颗粒相互作用。然后将此共沉淀应用于沉淀以作为颗粒合成的实例,并应用于微粒薄膜的形成作为结构形成的实例。

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